Department of Chemical Engineering, Stanford University, School of Engineering, Stanford, United States.
Departments of Structural Biology and Molecular & Cellular Physiology, School of Medicine, Stanford University, Stanford, United States.
Elife. 2022 Aug 1;11:e80130. doi: 10.7554/eLife.80130.
Mechanotransduction at cell-cell adhesions is crucial for the structural integrity, organization, and morphogenesis of epithelia. At cell-cell junctions, ternary E-cadherin/β-catenin/αE-catenin complexes sense and transmit mechanical load by binding to F-actin. The interaction with F-actin, described as a two-state catch bond, is weak in solution but is strengthened by applied force due to force-dependent transitions between weak and strong actin-binding states. Here, we provide direct evidence from optical trapping experiments that the catch bond property principally resides in the αE-catenin actin-binding domain (ABD). Consistent with our previously proposed model, the deletion of the first helix of the five-helix ABD bundle enables stable interactions with F-actin under minimal load that are well described by a single-state slip bond, even when αE-catenin is complexed with β-catenin and E-cadherin. Our data argue for a conserved catch bond mechanism for adhesion proteins with structurally similar ABDs. We also demonstrate that a stably bound ABD strengthens load-dependent binding interactions between a neighboring complex and F-actin, but the presence of the other αE-catenin domains weakens this effect. These results provide mechanistic insight to the cooperative binding of the cadherin-catenin complex to F-actin, which regulate dynamic cytoskeletal linkages in epithelial tissues.
细胞-细胞黏附处的力学转导对于上皮组织的结构完整性、组织和形态发生至关重要。在细胞连接中,三元 E-钙黏蛋白/β-连环蛋白/αE-连环蛋白复合物通过与 F-肌动蛋白结合来感知和传递机械负荷。与 F-肌动蛋白的相互作用被描述为一种双态捕获键,在溶液中较弱,但由于弱和强肌动蛋白结合状态之间的力依赖性转变,在施加力时会增强。在这里,我们提供了来自光阱实验的直接证据,表明捕获键特性主要存在于αE-连环蛋白肌动蛋白结合域(ABD)中。与我们之前提出的模型一致,ABD 五螺旋束的第一个螺旋缺失使与 F-肌动蛋白在最小负荷下能够稳定相互作用,即使当αE-连环蛋白与β-连环蛋白和 E-钙黏蛋白复合时,也可以很好地用单态滑动键来描述。我们的数据支持具有结构相似 ABD 的黏附蛋白的保守捕获键机制。我们还证明了稳定结合的 ABD 增强了相邻复合物与 F-肌动蛋白之间的负载依赖性结合相互作用,但其他αE-连环蛋白结构域会削弱这种效应。这些结果为钙黏蛋白-连环蛋白复合物与 F-肌动蛋白的协同结合提供了机制上的见解,这对于调节上皮组织中的动态细胞骨架连接至关重要。